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Cyclohexanone is the with the (CH2)5CO. The molecule consists of six-carbon cyclic molecule with a functional . This colorless oily liquid has a sweet odor reminiscent of . Over time, samples of cyclohexanone assume a pale yellow color.

Cyclohexanone is slightly soluble in water and miscible with common organic solvents. Millions of tonnes are produced annually, mainly as a precursor to .

(2011). 9783527306732, Wiley-VCH Verlag GmbH & Co. KgaA.


History and synthesis
The compound was discovered by in 1888 among the products of AC electrolysis of slightly acidified water solutions of phenol. He named it hydrophenoketone and correctly suggested that phenol was first by electrolytic hydrogen to , which he wasn't able to isolate, and then oxidized by electrolytic oxygen.


Laboratory synthesis
Cyclohexanone can be prepared from cyclohexanol by oxidation with chromium trioxide (). An alternative method utilizes the safer and more readily available oxidant sodium hypochlorite.


Industrial production
Cyclohexanone is produced by the oxidation of in air, typically using cobalt catalysts:
C6H12 + O2 → (CH2)5CO + H2O
This process forms as a , and this mixture, called "KA Oil" for ketone-alcohol oil, is the main feedstock for the production of . The oxidation involves radicals and the C6H11O2H as an intermediate. In some cases, purified cyclohexanol, obtained by hydration of , is the precursor. Alternatively, cyclohexanone can be produced by the partial of :
C6H5OH + 2 H2 → (CH2)5CO
This process can also be adjusted to favor the formation of cyclohexanol.

developed a process in which benzene is to cyclohexylbenzene. This latter product is to a and then cleaved into phenol and cyclohexanone. Therefore, this newer process without producing the acetone by-product appears attractive and is similar to the as a hydroperoxide is formed and then decomposed to yield two key products.


Uses
The great majority of cyclohexanone is consumed in the production of precursors to Nylon 6,6 and Nylon 6. About half of the world's supply is converted to , one of two precursors for nylon 6,6. For this application, the KA oil (see above) is oxidized with . The other half of the cyclohexanone supply is converted to cyclohexanone oxime. In the presence of , the oxime rearranges to , a precursor to nylon 6:
:


Other reactions
In addition to the large scale reactions conducted in service of the polymer industry, many reactions have been developed for cyclohexanone.

In the presence of light, it undergoes alpha-chlorination to give 2-chlorocyclohexanone. It forms a trimethylsilylenol ether upon treatment with trimethylsilylchloride in the presence of base.

It forms an enamine with .

Self condensation of cyclohexanone gives cyclohexenylcyclohexanone. The latter undergoes dehydrogenation to give 2-phenylphenol.

Treatment with nitrosyl chloride and ethanol in gives the oximinecarboxylic ester:


Illicit use
Cyclohexanone has been used in the illicit production of and its analogs and is often subject to purchase restrictions, such as being listed on the Special Surveillance List in the US.


Safety
Like , cyclohexanone is not carcinogenic and is moderately toxic, with a TLV of 25 ppm for the vapor. It is an irritant.

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